African Swine Fever Virus: An Emerging DNA Arbovirus

非洲猪瘟病毒 生物 鸟粪 虫媒病毒 乌鳢科 病毒学 滴答声 载体(分子生物学) 家猪 病毒 硬蜱科 地理 遗传学 基因 林业 重组DNA
作者
Natasha N. Gaudreault,Daniel W. Madden,William C. Wilson,Jessie D. Trujillo,Jüergen A. Richt
出处
期刊:Frontiers in Veterinary Science [Frontiers Media]
卷期号:7 被引量:285
标识
DOI:10.3389/fvets.2020.00215
摘要

African swine fever virus (ASFV) is the sole member of the family Asfarviridae, and the only known DNA arbovirus. Since its identification in Kenya in the 1920s, ASFV has remained endemic in Africa, maintained in a sylvatic cycle between Ornithodoros soft ticks and warthogs (Phacochoerus africanus) which do not develop clinical disease with ASFV infection. However, ASFV causes a devastating and economically significant disease of domestic (Sus scrofa domesticus) and feral (Sus scrofa ferus) swine. There is no ASFV vaccine available, and current control measures consist of strict animal quarantine and culling procedures. The virus is highly stable and easily spreads by infected swine, contaminated pork products and fomites, or via transmission by the Ornithodoros vector. Competent Ornithodoros argasid soft tick vectors are known to exist not only in Africa, but also in parts of Europe and the Americas. Once ASFV is established in the argasid soft tick vector, eradication can be difficult due to the long lifespan of Ornithodoros ticks and their proclivity to inhabit the burrows of warthogs or pens and shelters of domestic pigs. Establishment of endemic ASFV infections in wild boar populations further complicates the control of ASF. Between the late 1950s and early 1980s, ASFV emerged in Europe, Russia and South America, but was mostly resolved or eradicated by the mid-1990s. In 2007, a highly virulent genotype II ASFV strain emerged in the Caucasus region and subsequently spread into the Russian Federation and Europe, where it has continued to circulate and spread. Most recently, ASFV emerged in China and has since spread to several neighboring countries in Southeast Asia. The high morbidity and mortality associated with ASFV, the lack of an efficacious vaccine, and the complex makeup of the virion and genome as well as its lifecycle, make this pathogen a serious threat to the global swine industry and national economies. Topics covered by this review include factors important for ASFV infection, replication, maintenance and transmission, with attention to the role of the argasid tick vector and the sylvatic transmission cycle, control strategies for ASF, and knowledge gaps regarding the virus, vector and host species.

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